The effective capacity of the network between terminals and is:
1. | 2. | ||
3. | 4. |
1. | V | 2. | V |
3. | V | 4. | V |
1. | 2. | ||
3. | 4. |
1. | 2. | ||
3. | 4. |
Energy per unit volume for a capacitor having area and separation kept at a potential difference is given by:
1.
2.
3.
4.
Some charge is being given to a conductor. Then it's potential:
1. | is maximum at the surface. |
2. | is maximum at the centre. |
3. | remains the same throughout the conductor. |
4. | is maximum somewhere between the surface and the centre. |
A capacitor of capacity is charged up to volt and then connected to an uncharged capacitor . Then final P.D. across each will be:
1.
2.
3.
4.
If identical charges are placed at each corner of a cube of side then the electrical potential energy of charge which is placed at centre of the cube will be:
1. | 2. | ||
3. | 4. |
Three capacitors each of capacity µF are to be connected in such a way that the effective capacitance is µF. This can be done by:
1. | connecting all of them in a series. |
2. | connecting them in parallel. |
3. | connecting two in series and one in parallel. |
4. | connecting two in parallel and one in series. |
A bullet of mass has a charge of Through what potential difference must it be accelerated, starting from rest, to acquire a speed of
1.
2.
3.
4.